{"id":287122,"date":"2025-11-15T23:32:10","date_gmt":"2025-11-15T23:32:10","guid":{"rendered":"https:\/\/www.newsbeep.com\/au\/287122\/"},"modified":"2025-11-15T23:32:10","modified_gmt":"2025-11-15T23:32:10","slug":"animal-performance-rumen-microbiota-and-fermentation-in-growing-camel-calves-fed-alfalfa-hay-atriplex-or-their-mixture-bmc-veterinary-research","status":"publish","type":"post","link":"https:\/\/www.newsbeep.com\/au\/287122\/","title":{"rendered":"Animal performance, rumen microbiota, and fermentation in growing camel calves fed alfalfa hay, Atriplex, or their mixture | BMC Veterinary Research"},"content":{"rendered":"<p>Understanding the interaction between the chemistry of forage plants, rumen microbiota, and fermentation, and performance in camel calves can help design suitable feeding strategies that use halophyte plants as alternatives to conventional feeds. The proximate analysis of Atriplex and alfalfa hay in this study followed the range of previous studies [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 2\" title=\"Farid MF, Abdel-Wahed AM, Shawket SM, Hassan NI. Diet selection, feed intake capacity and performance of growing female camels: effects of type of roughage and level of concentrates offered. J Am Sci. 2009;6(11):317\u201336.\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR2\" id=\"ref-link-section-d211038851e5581\" rel=\"nofollow noopener\" target=\"_blank\">2<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 15\" title=\"Askar AR, Masoud A, El-Bordeny NE, Kewan KZ, El-Galil ER, El Ezz SS, et al. Grazing camels under semi-extensive production system: selectivity, feed intake capacity, digestion and energy expenditure. BMC Vet Res. 2024;20(1):364. &#010;                  https:\/\/doi.org\/10.1186\/s12917-024-04199-1&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR15\" id=\"ref-link-section-d211038851e5584\" rel=\"nofollow noopener\" target=\"_blank\">15<\/a>]. Tannin content of Atriplex was lower than the value indicated in Dadvar et al. [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 5\" title=\"Dadvar P, Mohammadabadi T, Sari M, Fayazi J. Investigation of rumen fermentation parameters and some blood metabolites of dromedary camels fed with C3 and C4 forages. Vet Res Forum. 2019;10(3):241\u20138. &#010;                  https:\/\/doi.org\/10.30466\/vrf.2018.74067.1995&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR5\" id=\"ref-link-section-d211038851e5590\" rel=\"nofollow noopener\" target=\"_blank\">5<\/a>] and higher than that in Mahipala et al. [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 16\" title=\"Mahipala MK, Krebs GL, McCafferty P, Gunaratne LH. Chemical composition, biological effects of tannin, and in vitro nutritive value of selected browse species grown in the West Australian Mediterranean environment. Anim Feed Sci Technol. 2009;153:203\u201315. &#010;                  https:\/\/doi.org\/10.1016\/j.anifeedsci.2009.06.014&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR16\" id=\"ref-link-section-d211038851e5594\" rel=\"nofollow noopener\" target=\"_blank\">16<\/a>]. In addition to phenols, tannins, and flavonoids, Atriplex contains different antinutritional factors, such as saponins, oxalates, alkaloids, and resins [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 7\" title=\"Rabee AE, Abd El Rahman T, Lamara M. Changes in the bacterial community colonizing extracted and non-extracted tannin-rich plants in the rumen of dromedary camels. PLoS One. 2023;18(3):e0282889. &#010;                  https:\/\/doi.org\/10.1371\/journal.pone.0282889&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR7\" id=\"ref-link-section-d211038851e5600\" rel=\"nofollow noopener\" target=\"_blank\">7<\/a>]. The tannin and phenols content of alfalfa hay was much lower than Atriplex, and the values indicated by Seyedin et al. [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 17\" title=\"Seyedin SM, Mojtahedi M, Farhangfar SH, Ghavipanje N. Partial substitution of alfalfa hay by Berberis vulgaris leaf modulated the growth performance, meat quality and antioxidant status of fattening lambs. Vet Med Sci. 2022;8(6):2605\u201315. &#010;                  https:\/\/doi.org\/10.1002\/vms3.934&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR17\" id=\"ref-link-section-d211038851e5606\" rel=\"nofollow noopener\" target=\"_blank\">17<\/a>]. Secondary metabolites in the halophyte plants can modify the rumen microbiota and fermentation [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 6\" title=\"Rabee AE. Degradability and rumen microbiota modulation of sesbania, leucaena, and anabasis forages in the rumen of dromedary camels and Barki sheep. Agroforest Syst. 2025;99:158. &#010;                  https:\/\/doi.org\/10.1007\/s10457-025-01251-3&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR6\" id=\"ref-link-section-d211038851e5609\" rel=\"nofollow noopener\" target=\"_blank\">6<\/a>].<\/p>\n<p>Rumen microbiota and rumen fermentation<\/p>\n<p>The majority of the bacterial community belonged to phyla Bacteroidota and Firmicutes, which agrees with the previous study on tanniniferous plant incubated in camel rumen [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 6\" title=\"Rabee AE. Degradability and rumen microbiota modulation of sesbania, leucaena, and anabasis forages in the rumen of dromedary camels and Barki sheep. Agroforest Syst. 2025;99:158. &#010;                  https:\/\/doi.org\/10.1007\/s10457-025-01251-3&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR6\" id=\"ref-link-section-d211038851e5619\" rel=\"nofollow noopener\" target=\"_blank\">6<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 7\" title=\"Rabee AE, Abd El Rahman T, Lamara M. Changes in the bacterial community colonizing extracted and non-extracted tannin-rich plants in the rumen of dromedary camels. PLoS One. 2023;18(3):e0282889. &#010;                  https:\/\/doi.org\/10.1371\/journal.pone.0282889&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR7\" id=\"ref-link-section-d211038851e5622\" rel=\"nofollow noopener\" target=\"_blank\">7<\/a>] and Lotus corniculatus [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 18\" title=\"Elliott CL, Edwards JE, Wilkinson TJ, Allison GG, McCaffrey K, Scott MB, et al. Using \u2018omic approaches to compare temporal bacterial colonization of Lolium perenne, Lotus corniculatus, and Trifolium pratense in the rumen. Front Microbiol. 2018;9:2184. &#010;                  https:\/\/doi.org\/10.3389\/fmicb.2018.02184&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR18\" id=\"ref-link-section-d211038851e5628\" rel=\"nofollow noopener\" target=\"_blank\">18<\/a>]. The members of Bacteroidota are specialized in the degradation of polysaccharides such as hemicellulose, cellulose, and pectin [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 7\" title=\"Rabee AE, Abd El Rahman T, Lamara M. Changes in the bacterial community colonizing extracted and non-extracted tannin-rich plants in the rumen of dromedary camels. PLoS One. 2023;18(3):e0282889. &#010;                  https:\/\/doi.org\/10.1371\/journal.pone.0282889&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR7\" id=\"ref-link-section-d211038851e5631\" rel=\"nofollow noopener\" target=\"_blank\">7<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 18\" title=\"Elliott CL, Edwards JE, Wilkinson TJ, Allison GG, McCaffrey K, Scott MB, et al. Using \u2018omic approaches to compare temporal bacterial colonization of Lolium perenne, Lotus corniculatus, and Trifolium pratense in the rumen. Front Microbiol. 2018;9:2184. &#010;                  https:\/\/doi.org\/10.3389\/fmicb.2018.02184&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR18\" id=\"ref-link-section-d211038851e5635\" rel=\"nofollow noopener\" target=\"_blank\">18<\/a>]. Inclusion of the Atriplex in the camel diet did not affect the relative abundance of phylum Bacteroidota or its dominant family, Prevotellaceae, which indicates that this phylum resists the secondary metabolites of saltbushes (Atriplex) and has a role in the performance of animals [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 7\" title=\"Rabee AE, Abd El Rahman T, Lamara M. Changes in the bacterial community colonizing extracted and non-extracted tannin-rich plants in the rumen of dromedary camels. PLoS One. 2023;18(3):e0282889. &#010;                  https:\/\/doi.org\/10.1371\/journal.pone.0282889&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR7\" id=\"ref-link-section-d211038851e5644\" rel=\"nofollow noopener\" target=\"_blank\">7<\/a>]. This speculation is supported by the higher prevalence of genus Alloprevotella in Atriplex-fed camels (MM and AA) compared to camels fed alfalfa hay (HH). A similar finding was obtained in lambs fed mimosa condensed tannin [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 19\" title=\"Salami SA, Valenti B, Bella M, O\u2019Grady MN, Luciano G, Kerry JP, Jones E, Priolo A, Newbold CJ. Characterisation of the ruminal fermentation and microbiome in lambs supplemented with hydrolysable and condensed tannins. FEMS Microbiol Ecol. 2018;94(5). &#010;                  https:\/\/doi.org\/10.1093\/femsec\/fiy061&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR19\" id=\"ref-link-section-d211038851e5654\" rel=\"nofollow noopener\" target=\"_blank\">19<\/a>]. Alloprevotella produces acetate and succinic acid and can enhance rumen fermentation and animal health [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 20\" title=\"Chen J, Zhang X, Chang X, Wei B, Fang Y, Song S, et al. Multi-omics analysis reveals the effects of host-rumen microbiota interactions on growth performance in a goat model. Front Microbiol. 2024;15:1445223. &#010;                  https:\/\/doi.org\/10.3389\/fmicb.2024.1445223&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR20\" id=\"ref-link-section-d211038851e5660\" rel=\"nofollow noopener\" target=\"_blank\">20<\/a>]. Candidate genera Prevotellaceae UCG-003 and Bacteroidales UCG-001 can resist tannins and have potential roles in fiber degradation [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 21\" title=\"Li Z, Wang X, Zhang T, Si H, Xu C, Wright AD, et al. Heterogeneous development of methanogens and the correlation with bacteria in the rumen and cecum of sika deer (Cervus nippon) during early life suggest different ecology relevance. BMC Microbiol. 2019;19(1):129. &#010;                  https:\/\/doi.org\/10.1186\/s12866-019-1504-9&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR21\" id=\"ref-link-section-d211038851e5669\" rel=\"nofollow noopener\" target=\"_blank\">21<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 22\" title=\"Biscarini F, Palazzo F, Castellani F, Masetti G, Grotta L, Cichelli A, et al. Rumen microbiome in dairy calves fed copper and grape pomace dietary supplementations: composition and predicted functional profile. PLoS One. 2018;13(11):e0205670. &#010;                  https:\/\/doi.org\/10.1371\/journal.pone.0205670&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR22\" id=\"ref-link-section-d211038851e5673\" rel=\"nofollow noopener\" target=\"_blank\">22<\/a>], which demonstrates their higher proportions in Atriplex-fed groups. In contrast, the family Bacteroidales RF16 group declined in group AA fed 100% Atriplex. This family has a potential role in fiber degradation [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 23\" title=\"Liu C, Wu H, Liu S, Chai S, Meng Q, Zhou Z. Dynamic alterations in yak rumen bacteria community and metabolome characteristics in response to feed type. Front Microbiol. 2019;10:1116. &#010;                  https:\/\/doi.org\/10.3389\/fmicb.2019.01116&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR23\" id=\"ref-link-section-d211038851e5679\" rel=\"nofollow noopener\" target=\"_blank\">23<\/a>].<\/p>\n<p>Some members of the phylum Firmicutes, such as family Ruminococcaceae and genera Acetitomaculum, Moryella, Ruminiclostridium, Christensenellaceae R-7 group, and Anaerovorax, were higher in Atriplex-fed groups. These finding indicates that these bacteria can resist tannins [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 6\" title=\"Rabee AE. Degradability and rumen microbiota modulation of sesbania, leucaena, and anabasis forages in the rumen of dromedary camels and Barki sheep. Agroforest Syst. 2025;99:158. &#010;                  https:\/\/doi.org\/10.1007\/s10457-025-01251-3&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR6\" id=\"ref-link-section-d211038851e5704\" rel=\"nofollow noopener\" target=\"_blank\">6<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 7\" title=\"Rabee AE, Abd El Rahman T, Lamara M. Changes in the bacterial community colonizing extracted and non-extracted tannin-rich plants in the rumen of dromedary camels. PLoS One. 2023;18(3):e0282889. &#010;                  https:\/\/doi.org\/10.1371\/journal.pone.0282889&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR7\" id=\"ref-link-section-d211038851e5707\" rel=\"nofollow noopener\" target=\"_blank\">7<\/a>]. In addition, these bacteria can degrade fiber and produce VFA such as acetic and butyric acids using H2, which reduces the methane production and improves feed efficiency [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 13\" title=\"Rabee AE, Mohamed M, Ghandour M, Sallam A, Elwakeel EA, Mohammed RS, et al. Rumen fermentation and microbiota in Shami goats fed on condensed tannins or herbal mixture. BMC Vet Res. 2024;20(1):35. &#010;                  https:\/\/doi.org\/10.1186\/s12917-024-03887-2&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR13\" id=\"ref-link-section-d211038851e5712\" rel=\"nofollow noopener\" target=\"_blank\">13<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" title=\"Lopez S, McIntosh FM, Wallace RJ, Newbold CJ. Effect of adding acetogenic bacteria on methane production by mixed rumen microorganisms. Anim Feed Sci Technol. 1999;78:1\u20139. &#10;                  https:\/\/doi.org\/10.1016\/S0377-8401(98)00273-9&#10;                  &#10;                .\" href=\"#ref-CR24\" id=\"ref-link-section-d211038851e5715\">24<\/a>,<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" title=\"Waters SM, Roskam E, Smith PE, Kenny DA, Popova M, Eug\u00e8ne M, et al. The role of rumen microbiome in the development of methane mitigation strategies for ruminant livestock. J Dairy Sci. 2025;S0022\u20130302(25):00043\u20138. &#10;                  https:\/\/doi.org\/10.3168\/jds.2024-25778&#10;                  &#10;                .\" href=\"#ref-CR25\" id=\"ref-link-section-d211038851e5715_1\">25<\/a>,<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" title=\"Liu Y, Wu H, Chen W, Liu C, Meng Q, Zhou Z. Rumen microbiome and metabolome of high and low residual feed intake Angus heifers. Front Vet Sci. 2022;9:812861. &#10;                  https:\/\/doi.org\/10.3389\/fvets.2022.812861&#10;                  &#10;                .\" href=\"#ref-CR26\" id=\"ref-link-section-d211038851e5715_2\">26<\/a>,<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 27\" title=\"Matthies C, Evers S, Ludwig W, Schink B. Anaerovorax odorimutans gen. nov., sp. nov., a putrescine-fermenting, strictly anaerobic bacterium. Int J Syst Evol Microbiol. 2000;50(4):1591\u20134. &#010;                  https:\/\/doi.org\/10.1099\/00207713-50-4-1591&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR27\" id=\"ref-link-section-d211038851e5719\" rel=\"nofollow noopener\" target=\"_blank\">27<\/a>]. Tannin-resistant bacteria contribute to the feed efficiency and ability of camels to utilize thorny bushes, halophytes [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 6\" title=\"Rabee AE. Degradability and rumen microbiota modulation of sesbania, leucaena, and anabasis forages in the rumen of dromedary camels and Barki sheep. Agroforest Syst. 2025;99:158. &#010;                  https:\/\/doi.org\/10.1007\/s10457-025-01251-3&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR6\" id=\"ref-link-section-d211038851e5722\" rel=\"nofollow noopener\" target=\"_blank\">6<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 7\" title=\"Rabee AE, Abd El Rahman T, Lamara M. Changes in the bacterial community colonizing extracted and non-extracted tannin-rich plants in the rumen of dromedary camels. PLoS One. 2023;18(3):e0282889. &#010;                  https:\/\/doi.org\/10.1371\/journal.pone.0282889&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR7\" id=\"ref-link-section-d211038851e5725\" rel=\"nofollow noopener\" target=\"_blank\">7<\/a>]. In contrast, some fibrolytic bacteria were declined by inclusion of the Atriplex, such as Anaeroplasma [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 28\" title=\"Liu K, Zhang Y, Yu Z, Xu Q, Zheng N, Zhao S, et al. Ruminal microbiota-host interaction and its effect on nutrient metabolism. Anim Nutr. 2021;7(1):49\u201355. &#010;                  https:\/\/doi.org\/10.1016\/j.aninu.2020.12.001&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR28\" id=\"ref-link-section-d211038851e5734\" rel=\"nofollow noopener\" target=\"_blank\">28<\/a>].<\/p>\n<p>Moreover, some minor phyla were increased in Atriplex-fed calves, including Elusimicrobiota, Actinobacteriota, and Planctomycetota. The members of these phyla can resist tannins [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 6\" title=\"Rabee AE. Degradability and rumen microbiota modulation of sesbania, leucaena, and anabasis forages in the rumen of dromedary camels and Barki sheep. Agroforest Syst. 2025;99:158. &#010;                  https:\/\/doi.org\/10.1007\/s10457-025-01251-3&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR6\" id=\"ref-link-section-d211038851e5743\" rel=\"nofollow noopener\" target=\"_blank\">6<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 7\" title=\"Rabee AE, Abd El Rahman T, Lamara M. Changes in the bacterial community colonizing extracted and non-extracted tannin-rich plants in the rumen of dromedary camels. PLoS One. 2023;18(3):e0282889. &#010;                  https:\/\/doi.org\/10.1371\/journal.pone.0282889&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR7\" id=\"ref-link-section-d211038851e5746\" rel=\"nofollow noopener\" target=\"_blank\">7<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 13\" title=\"Rabee AE, Mohamed M, Ghandour M, Sallam A, Elwakeel EA, Mohammed RS, et al. Rumen fermentation and microbiota in Shami goats fed on condensed tannins or herbal mixture. BMC Vet Res. 2024;20(1):35. &#010;                  https:\/\/doi.org\/10.1186\/s12917-024-03887-2&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR13\" id=\"ref-link-section-d211038851e5749\" rel=\"nofollow noopener\" target=\"_blank\">13<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 29\" title=\"Patra AK, Saxena J. Exploitation of dietary tannins to improve rumen metabolism and ruminant nutrition. J Sci Food Agric. 2011;91(1):24\u201337. &#010;                  https:\/\/doi.org\/10.1002\/jsfa.4152&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR29\" id=\"ref-link-section-d211038851e5752\" rel=\"nofollow noopener\" target=\"_blank\">29<\/a>] and ferment glucose and complex carbohydrates to acetic and lactic acids, and it was associated with higher feed efficiency in calves [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" title=\"Patra AK, Saxena J. Exploitation of dietary tannins to improve rumen metabolism and ruminant nutrition. J Sci Food Agric. 2011;91(1):24\u201337. &#10;                  https:\/\/doi.org\/10.1002\/jsfa.4152&#10;                  &#10;                .\" href=\"#ref-CR29\" id=\"ref-link-section-d211038851e5756\">29<\/a>,<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" title=\"Brune A. Microbial symbioses in the tract of lower termites. In: Beneficial microorganisms in multicellular life forms. Rosenberg E, Gophna U, eds. Berlin, Heidelberg: Springer; 2012. &#10;                  https:\/\/doi.org\/10.1007\/978-3-642-21680-0_1&#10;                  &#10;                .\" href=\"#ref-CR30\" id=\"ref-link-section-d211038851e5756_1\">30<\/a>,<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" title=\"Trovatelli LD, Matteuzzi D. Presence of bifidobacteria in the rumen of calves fed different rations. Appl Environ Microbiol. 1976;32(4):470\u20133. &#10;                  https:\/\/doi.org\/10.1128\/aem.32.4.470-473.1976&#10;                  &#10;                .\" href=\"#ref-CR31\" id=\"ref-link-section-d211038851e5756_2\">31<\/a>,<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 32\" title=\"Seo J, Kim S, Kim M, Upadhaya S, Kam D, Ha J. Direct-fed microbials for ruminant animals. Anim Biosci. 2010;23(12):1657\u201367. &#010;                  https:\/\/doi.org\/10.5713\/ajas.2010.r.08&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR32\" id=\"ref-link-section-d211038851e5759\" rel=\"nofollow noopener\" target=\"_blank\">32<\/a>].<\/p>\n<p>Phyla Fibrobacterota and Spirochaetota were declined in Atriplex-fed groups. The members of these phyla are sensitive to tannins [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 7\" title=\"Rabee AE, Abd El Rahman T, Lamara M. Changes in the bacterial community colonizing extracted and non-extracted tannin-rich plants in the rumen of dromedary camels. PLoS One. 2023;18(3):e0282889. &#010;                  https:\/\/doi.org\/10.1371\/journal.pone.0282889&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR7\" id=\"ref-link-section-d211038851e5768\" rel=\"nofollow noopener\" target=\"_blank\">7<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 13\" title=\"Rabee AE, Mohamed M, Ghandour M, Sallam A, Elwakeel EA, Mohammed RS, et al. Rumen fermentation and microbiota in Shami goats fed on condensed tannins or herbal mixture. BMC Vet Res. 2024;20(1):35. &#010;                  https:\/\/doi.org\/10.1186\/s12917-024-03887-2&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR13\" id=\"ref-link-section-d211038851e5771\" rel=\"nofollow noopener\" target=\"_blank\">13<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 19\" title=\"Salami SA, Valenti B, Bella M, O\u2019Grady MN, Luciano G, Kerry JP, Jones E, Priolo A, Newbold CJ. Characterisation of the ruminal fermentation and microbiome in lambs supplemented with hydrolysable and condensed tannins. FEMS Microbiol Ecol. 2018;94(5). &#010;                  https:\/\/doi.org\/10.1093\/femsec\/fiy061&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR19\" id=\"ref-link-section-d211038851e5774\" rel=\"nofollow noopener\" target=\"_blank\">19<\/a>]. Moreover, these bacteria are involved in the metabolism of complex carbohydrates such as pectin and cellulose and produce acetic acid [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 6\" title=\"Rabee AE. Degradability and rumen microbiota modulation of sesbania, leucaena, and anabasis forages in the rumen of dromedary camels and Barki sheep. Agroforest Syst. 2025;99:158. &#010;                  https:\/\/doi.org\/10.1007\/s10457-025-01251-3&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR6\" id=\"ref-link-section-d211038851e5777\" rel=\"nofollow noopener\" target=\"_blank\">6<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 33\" title=\"Caro-Quintero A, Ritalahti KM, Cusick KD, L\u00f6ffler FE, Konstantinidis KT. The chimeric genome of Sphaerochaeta: nonspiral Spirochetes that break with the prevalent dogma in spirochete biology. MBio. 2012;3:43. &#010;                  https:\/\/doi.org\/10.1128\/mBio.00025-12&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR33\" id=\"ref-link-section-d211038851e5781\" rel=\"nofollow noopener\" target=\"_blank\">33<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 34\" title=\"Zhang H, Elolimy AA, Akbar H, Thanh LP, Yang Z, Loor JJ. Association of residual feed intake with peripartal ruminal microbiome and milk fatty acid composition during early lactation in Holstein dairy cows. J Dairy Sci. 2022;105(6):4971\u201386. &#010;                  https:\/\/doi.org\/10.3168\/jds.2021-21454&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR34\" id=\"ref-link-section-d211038851e5784\" rel=\"nofollow noopener\" target=\"_blank\">34<\/a>], which is a negative point of feeding on saltbushes.<\/p>\n<p>Rumen methanogens were affiliated mainly with the genus Methanobrevibacter, which declined in AA groups. The decline of the Methanobrevibacter could be attributed to the direct effect of secondary metabolites (tannins, phenols, saponins) that have antimicrobial effects on the methanogens or the protozoa that provide rumen methanogens with hydrogen for methane production [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 5\" title=\"Dadvar P, Mohammadabadi T, Sari M, Fayazi J. Investigation of rumen fermentation parameters and some blood metabolites of dromedary camels fed with C3 and C4 forages. Vet Res Forum. 2019;10(3):241\u20138. &#010;                  https:\/\/doi.org\/10.30466\/vrf.2018.74067.1995&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR5\" id=\"ref-link-section-d211038851e5797\" rel=\"nofollow noopener\" target=\"_blank\">5<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 13\" title=\"Rabee AE, Mohamed M, Ghandour M, Sallam A, Elwakeel EA, Mohammed RS, et al. Rumen fermentation and microbiota in Shami goats fed on condensed tannins or herbal mixture. BMC Vet Res. 2024;20(1):35. &#010;                  https:\/\/doi.org\/10.1186\/s12917-024-03887-2&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR13\" id=\"ref-link-section-d211038851e5800\" rel=\"nofollow noopener\" target=\"_blank\">13<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 35\" title=\"Min BR, Castleberry L, Allen H, Parker D, Waldrip H, Brauer D, et al. Associative effects of wet distiller\u2019s grains plus solubles and tannin-rich peanut skin supplementation on in vitro rumen fermentation, greenhouse gas emissions, and microbial changes. J Anim Sci. 2019;97(11):4668\u201381. &#010;                  https:\/\/doi.org\/10.1093\/jas\/skz317&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR35\" id=\"ref-link-section-d211038851e5803\" rel=\"nofollow noopener\" target=\"_blank\">35<\/a>]. Another explanation for the decline in the rumen methanogens is the low availability of acetate and hydrogen [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 13\" title=\"Rabee AE, Mohamed M, Ghandour M, Sallam A, Elwakeel EA, Mohammed RS, et al. Rumen fermentation and microbiota in Shami goats fed on condensed tannins or herbal mixture. BMC Vet Res. 2024;20(1):35. &#010;                  https:\/\/doi.org\/10.1186\/s12917-024-03887-2&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR13\" id=\"ref-link-section-d211038851e5807\" rel=\"nofollow noopener\" target=\"_blank\">13<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 36\" title=\"El-Zaiat HM, Kholif AE, Moharam MS, Attia MF, Abdalla AL, Sallam SM. The ability of tanniniferous legumes to reduce methane production and enhance feed utilization in Barki rams: in vitro and in vivo evaluation. Small Rumin Res. 2020;193. &#010;                  https:\/\/doi.org\/10.1016\/j.smallrumres.2020.106259&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR36\" id=\"ref-link-section-d211038851e5810\" rel=\"nofollow noopener\" target=\"_blank\">36<\/a>]. Previous studies [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 6\" title=\"Rabee AE. Degradability and rumen microbiota modulation of sesbania, leucaena, and anabasis forages in the rumen of dromedary camels and Barki sheep. Agroforest Syst. 2025;99:158. &#010;                  https:\/\/doi.org\/10.1007\/s10457-025-01251-3&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR6\" id=\"ref-link-section-d211038851e5813\" rel=\"nofollow noopener\" target=\"_blank\">6<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 36\" title=\"El-Zaiat HM, Kholif AE, Moharam MS, Attia MF, Abdalla AL, Sallam SM. The ability of tanniniferous legumes to reduce methane production and enhance feed utilization in Barki rams: in vitro and in vivo evaluation. Small Rumin Res. 2020;193. &#010;                  https:\/\/doi.org\/10.1016\/j.smallrumres.2020.106259&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR36\" id=\"ref-link-section-d211038851e5816\" rel=\"nofollow noopener\" target=\"_blank\">36<\/a>] indicated that tannin-rich plants decreased rumen methanogens, methane production, and protozoa count.<\/p>\n<p>The changes in forage type affected the rumen fermentation parameters, due to the changes in the rumen microbial community [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 5\" title=\"Dadvar P, Mohammadabadi T, Sari M, Fayazi J. Investigation of rumen fermentation parameters and some blood metabolites of dromedary camels fed with C3 and C4 forages. Vet Res Forum. 2019;10(3):241\u20138. &#010;                  https:\/\/doi.org\/10.30466\/vrf.2018.74067.1995&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR5\" id=\"ref-link-section-d211038851e5822\" rel=\"nofollow noopener\" target=\"_blank\">5<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 13\" title=\"Rabee AE, Mohamed M, Ghandour M, Sallam A, Elwakeel EA, Mohammed RS, et al. Rumen fermentation and microbiota in Shami goats fed on condensed tannins or herbal mixture. BMC Vet Res. 2024;20(1):35. &#010;                  https:\/\/doi.org\/10.1186\/s12917-024-03887-2&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR13\" id=\"ref-link-section-d211038851e5825\" rel=\"nofollow noopener\" target=\"_blank\">13<\/a>]. The decline in the fiber-degrading and acetate-producing bacteria, such as Fibrobacteres and Sphaerochaeta, might have decreased the fiber digestibility and the acetate production [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 7\" title=\"Rabee AE, Abd El Rahman T, Lamara M. Changes in the bacterial community colonizing extracted and non-extracted tannin-rich plants in the rumen of dromedary camels. PLoS One. 2023;18(3):e0282889. &#010;                  https:\/\/doi.org\/10.1371\/journal.pone.0282889&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR7\" id=\"ref-link-section-d211038851e5831\" rel=\"nofollow noopener\" target=\"_blank\">7<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 33\" title=\"Caro-Quintero A, Ritalahti KM, Cusick KD, L\u00f6ffler FE, Konstantinidis KT. The chimeric genome of Sphaerochaeta: nonspiral Spirochetes that break with the prevalent dogma in spirochete biology. MBio. 2012;3:43. &#010;                  https:\/\/doi.org\/10.1128\/mBio.00025-12&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR33\" id=\"ref-link-section-d211038851e5834\" rel=\"nofollow noopener\" target=\"_blank\">33<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 34\" title=\"Zhang H, Elolimy AA, Akbar H, Thanh LP, Yang Z, Loor JJ. Association of residual feed intake with peripartal ruminal microbiome and milk fatty acid composition during early lactation in Holstein dairy cows. J Dairy Sci. 2022;105(6):4971\u201386. &#010;                  https:\/\/doi.org\/10.3168\/jds.2021-21454&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR34\" id=\"ref-link-section-d211038851e5838\" rel=\"nofollow noopener\" target=\"_blank\">34<\/a>], which explains the lower acetic acid in the Atriplex-fed camels [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 5\" title=\"Dadvar P, Mohammadabadi T, Sari M, Fayazi J. Investigation of rumen fermentation parameters and some blood metabolites of dromedary camels fed with C3 and C4 forages. Vet Res Forum. 2019;10(3):241\u20138. &#010;                  https:\/\/doi.org\/10.30466\/vrf.2018.74067.1995&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR5\" id=\"ref-link-section-d211038851e5844\" rel=\"nofollow noopener\" target=\"_blank\">5<\/a>]. Previous studies on camels [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 5\" title=\"Dadvar P, Mohammadabadi T, Sari M, Fayazi J. Investigation of rumen fermentation parameters and some blood metabolites of dromedary camels fed with C3 and C4 forages. Vet Res Forum. 2019;10(3):241\u20138. &#010;                  https:\/\/doi.org\/10.30466\/vrf.2018.74067.1995&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR5\" id=\"ref-link-section-d211038851e5847\" rel=\"nofollow noopener\" target=\"_blank\">5<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 37\" title=\"Ghavipanje N, Vargas-Bello-P\u00e9rez E, Afshin M, Hosseini SA, Aghashahi A, Vatankhah AM. The inclusion of Alhagi maurorum in growing camel diet: effect on performance, liver-related blood metabolites, and antioxidant status. Front Vet Sci. 2022;9:863121. &#010;                  https:\/\/doi.org\/10.3389\/fvets.2022.863121&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR37\" id=\"ref-link-section-d211038851e5850\" rel=\"nofollow noopener\" target=\"_blank\">37<\/a>], sheep and goat [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 38\" title=\"Askar AR, Nassar MS, Badawy HS, Eid EY, Guada JA, Farid MF. Recovered energy and efficiency of digestion in sheep and goats fed Atriplex nummularia compared to alfalfa hay. Livest Sci. 2016;194:1\u20136. &#010;                  https:\/\/doi.org\/10.1016\/j.livsci.2016.10.009&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR38\" id=\"ref-link-section-d211038851e5853\" rel=\"nofollow noopener\" target=\"_blank\">38<\/a>] reported that the inclusion of halophytes in the diets decreased the cellulolytic enzymes and digestibility. The higher production of propionate, as in the group AA, consumes the hydrogen from the rumen environment, which decreases the availability of hydrogen for methane production, as the hydrogen is the main substrate for rumen methanogens to produce methane [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 13\" title=\"Rabee AE, Mohamed M, Ghandour M, Sallam A, Elwakeel EA, Mohammed RS, et al. Rumen fermentation and microbiota in Shami goats fed on condensed tannins or herbal mixture. BMC Vet Res. 2024;20(1):35. &#010;                  https:\/\/doi.org\/10.1186\/s12917-024-03887-2&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR13\" id=\"ref-link-section-d211038851e5857\" rel=\"nofollow noopener\" target=\"_blank\">13<\/a>]. This explanation is supported by lower predicted methane in the AA group. Higher propionic and butyric acids in the AA group could be attributed to the higher butyric and propionic-producing bacteria, such as Prevotella, Anaerovorax, and Moryella, which tolerate the secondary metabolites in Atriplex [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 13\" title=\"Rabee AE, Mohamed M, Ghandour M, Sallam A, Elwakeel EA, Mohammed RS, et al. Rumen fermentation and microbiota in Shami goats fed on condensed tannins or herbal mixture. BMC Vet Res. 2024;20(1):35. &#010;                  https:\/\/doi.org\/10.1186\/s12917-024-03887-2&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR13\" id=\"ref-link-section-d211038851e5872\" rel=\"nofollow noopener\" target=\"_blank\">13<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 25\" title=\"Waters SM, Roskam E, Smith PE, Kenny DA, Popova M, Eug\u00e8ne M, et al. The role of rumen microbiome in the development of methane mitigation strategies for ruminant livestock. J Dairy Sci. 2025;S0022\u20130302(25):00043\u20138. &#010;                  https:\/\/doi.org\/10.3168\/jds.2024-25778&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR25\" id=\"ref-link-section-d211038851e5876\" rel=\"nofollow noopener\" target=\"_blank\">25<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 27\" title=\"Matthies C, Evers S, Ludwig W, Schink B. Anaerovorax odorimutans gen. nov., sp. nov., a putrescine-fermenting, strictly anaerobic bacterium. Int J Syst Evol Microbiol. 2000;50(4):1591\u20134. &#010;                  https:\/\/doi.org\/10.1099\/00207713-50-4-1591&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR27\" id=\"ref-link-section-d211038851e5879\" rel=\"nofollow noopener\" target=\"_blank\">27<\/a>]. Similar findings were obtained in claves supplemented with gallic acid [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 8\" title=\"Xu HJ, Zhang QY, Wang LH, Zhang CR, Li Y, Zhang YG. Growth performance, digestibility, blood metabolites, ruminal fermentation, and bacterial communities in response to the inclusion of gallic acid in the starter feed of preweaning dairy calves. J Dairy Sci. 2022;105(4):3078\u201389. &#010;                  https:\/\/doi.org\/10.3168\/jds.2021-20838&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR8\" id=\"ref-link-section-d211038851e5882\" rel=\"nofollow noopener\" target=\"_blank\">8<\/a>]. The total VFA was not affected in camels fed Atriplex, which agrees with previous studies on camels and lambs fed Atriplex and camelthorn [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 5\" title=\"Dadvar P, Mohammadabadi T, Sari M, Fayazi J. Investigation of rumen fermentation parameters and some blood metabolites of dromedary camels fed with C3 and C4 forages. Vet Res Forum. 2019;10(3):241\u20138. &#010;                  https:\/\/doi.org\/10.30466\/vrf.2018.74067.1995&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR5\" id=\"ref-link-section-d211038851e5888\" rel=\"nofollow noopener\" target=\"_blank\">5<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 37\" title=\"Ghavipanje N, Vargas-Bello-P\u00e9rez E, Afshin M, Hosseini SA, Aghashahi A, Vatankhah AM. The inclusion of Alhagi maurorum in growing camel diet: effect on performance, liver-related blood metabolites, and antioxidant status. Front Vet Sci. 2022;9:863121. &#010;                  https:\/\/doi.org\/10.3389\/fvets.2022.863121&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR37\" id=\"ref-link-section-d211038851e5891\" rel=\"nofollow noopener\" target=\"_blank\">37<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 39\" title=\"Ahmed MH, Salem AZ, Zeweil HS, Sun XZ, Kholif AE, Elghandour MM, et al. Growth performance and carcass characteristics of lambs fed halophytes as a partial or whole replacement of berseem hay. Small Rumin Res. 2015;128:1\u20139. &#010;                  https:\/\/doi.org\/10.1016\/j.smallrumres.2015.05.004&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR39\" id=\"ref-link-section-d211038851e5895\" rel=\"nofollow noopener\" target=\"_blank\">39<\/a>]. The decline in the rumen ammonia was also reported in camels fed Atriplex [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 5\" title=\"Dadvar P, Mohammadabadi T, Sari M, Fayazi J. Investigation of rumen fermentation parameters and some blood metabolites of dromedary camels fed with C3 and C4 forages. Vet Res Forum. 2019;10(3):241\u20138. &#010;                  https:\/\/doi.org\/10.30466\/vrf.2018.74067.1995&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR5\" id=\"ref-link-section-d211038851e5901\" rel=\"nofollow noopener\" target=\"_blank\">5<\/a>]. Abdullah et al. [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 40\" title=\"Abdullah MA, Youssef IM, Eissa MA. Evaluation of Atriplex nummularia as a roughage source for growing lambs: effects on performance, rumen fermentation and some blood mineral concentrations. Int J Anim Sci Technol. 2019;2(4):55\u201361. &#010;                  https:\/\/doi.org\/10.11648\/j.ijast.20180204.13&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR40\" id=\"ref-link-section-d211038851e5904\" rel=\"nofollow noopener\" target=\"_blank\">40<\/a>] noticed a decline in the rumen ammonia in lambs fed Atriplex hay. Lower rumen ammonia could be attributed to the lowered degradation of peptides and deamination of amino acids in the rumen due to the presence of tannins in the Atriplex [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 4\" title=\"Abdel-Wahed AM. Effect of drinking saline water on performance, digestibility and nitrogen utilization of growing camels feed different quality roughages. Int J Environ Agric Biotechnol. 2021;6(6):097\u2013105. &#010;                  https:\/\/doi.org\/10.22161\/ijeab.66.11&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR4\" id=\"ref-link-section-d211038851e5914\" rel=\"nofollow noopener\" target=\"_blank\">4<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 5\" title=\"Dadvar P, Mohammadabadi T, Sari M, Fayazi J. Investigation of rumen fermentation parameters and some blood metabolites of dromedary camels fed with C3 and C4 forages. Vet Res Forum. 2019;10(3):241\u20138. &#010;                  https:\/\/doi.org\/10.30466\/vrf.2018.74067.1995&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR5\" id=\"ref-link-section-d211038851e5917\" rel=\"nofollow noopener\" target=\"_blank\">5<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 39\" title=\"Ahmed MH, Salem AZ, Zeweil HS, Sun XZ, Kholif AE, Elghandour MM, et al. Growth performance and carcass characteristics of lambs fed halophytes as a partial or whole replacement of berseem hay. Small Rumin Res. 2015;128:1\u20139. &#010;                  https:\/\/doi.org\/10.1016\/j.smallrumres.2015.05.004&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR39\" id=\"ref-link-section-d211038851e5920\" rel=\"nofollow noopener\" target=\"_blank\">39<\/a>].<\/p>\n<p>Feed intake and growth performance<\/p>\n<p>The values of feed intake were within the ranges indicated in growing camels fed different forages [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 2\" title=\"Farid MF, Abdel-Wahed AM, Shawket SM, Hassan NI. Diet selection, feed intake capacity and performance of growing female camels: effects of type of roughage and level of concentrates offered. J Am Sci. 2009;6(11):317\u201336.\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR2\" id=\"ref-link-section-d211038851e5931\" rel=\"nofollow noopener\" target=\"_blank\">2<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 4\" title=\"Abdel-Wahed AM. Effect of drinking saline water on performance, digestibility and nitrogen utilization of growing camels feed different quality roughages. Int J Environ Agric Biotechnol. 2021;6(6):097\u2013105. &#010;                  https:\/\/doi.org\/10.22161\/ijeab.66.11&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR4\" id=\"ref-link-section-d211038851e5934\" rel=\"nofollow noopener\" target=\"_blank\">4<\/a>]. Including the Atriplex in camel diets did not affect the feed intake. In contrast, previous studies on camels [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 2\" title=\"Farid MF, Abdel-Wahed AM, Shawket SM, Hassan NI. Diet selection, feed intake capacity and performance of growing female camels: effects of type of roughage and level of concentrates offered. J Am Sci. 2009;6(11):317\u201336.\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR2\" id=\"ref-link-section-d211038851e5940\" rel=\"nofollow noopener\" target=\"_blank\">2<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 4\" title=\"Abdel-Wahed AM. Effect of drinking saline water on performance, digestibility and nitrogen utilization of growing camels feed different quality roughages. Int J Environ Agric Biotechnol. 2021;6(6):097\u2013105. &#010;                  https:\/\/doi.org\/10.22161\/ijeab.66.11&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR4\" id=\"ref-link-section-d211038851e5943\" rel=\"nofollow noopener\" target=\"_blank\">4<\/a>] reported increased feed intake when Alfalfa and Rice straw were replaced by Atriplex. Growth performance was slightly declined due to the inclusion of Atriplex in animal diets; however, the values of ADG in the current study were higher than those of camels fed alfalfa hay and Atriplex [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 2\" title=\"Farid MF, Abdel-Wahed AM, Shawket SM, Hassan NI. Diet selection, feed intake capacity and performance of growing female camels: effects of type of roughage and level of concentrates offered. J Am Sci. 2009;6(11):317\u201336.\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR2\" id=\"ref-link-section-d211038851e5956\" rel=\"nofollow noopener\" target=\"_blank\">2<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 4\" title=\"Abdel-Wahed AM. Effect of drinking saline water on performance, digestibility and nitrogen utilization of growing camels feed different quality roughages. Int J Environ Agric Biotechnol. 2021;6(6):097\u2013105. &#010;                  https:\/\/doi.org\/10.22161\/ijeab.66.11&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR4\" id=\"ref-link-section-d211038851e5959\" rel=\"nofollow noopener\" target=\"_blank\">4<\/a>]. In contrast, Farid et al. [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 2\" title=\"Farid MF, Abdel-Wahed AM, Shawket SM, Hassan NI. Diet selection, feed intake capacity and performance of growing female camels: effects of type of roughage and level of concentrates offered. J Am Sci. 2009;6(11):317\u201336.\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR2\" id=\"ref-link-section-d211038851e5962\" rel=\"nofollow noopener\" target=\"_blank\">2<\/a>] and Abdel-Wahed [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 4\" title=\"Abdel-Wahed AM. Effect of drinking saline water on performance, digestibility and nitrogen utilization of growing camels feed different quality roughages. Int J Environ Agric Biotechnol. 2021;6(6):097\u2013105. &#010;                  https:\/\/doi.org\/10.22161\/ijeab.66.11&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR4\" id=\"ref-link-section-d211038851e5966\" rel=\"nofollow noopener\" target=\"_blank\">4<\/a>] reported improved growth rate due to replacing clover hay and rice straw with Atriplex, and they attributed the increase of ADG in camels fed Atriplex to the ad libitum feeding of fresh chopped Atriplex; while Atriplex, in the current study, was offered dried. The decline in growth performance could be attributed to the decrease in digestibility as reported on growing camels fed Atriplex or camelthorn [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 37\" title=\"Ghavipanje N, Vargas-Bello-P\u00e9rez E, Afshin M, Hosseini SA, Aghashahi A, Vatankhah AM. The inclusion of Alhagi maurorum in growing camel diet: effect on performance, liver-related blood metabolites, and antioxidant status. Front Vet Sci. 2022;9:863121. &#010;                  https:\/\/doi.org\/10.3389\/fvets.2022.863121&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR37\" id=\"ref-link-section-d211038851e5985\" rel=\"nofollow noopener\" target=\"_blank\">37<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 41\" title=\"Shawket S, El Shaer H, Ahmed M. Nutritional performance of dry she-camels fed Atriplex halimus (saltbush) for prolonged-period. Egypt J Camel Sci. 2023;1(2):83\u201390. &#010;                  https:\/\/doi.org\/10.21608\/ejcs.2024.211113.1005&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR41\" id=\"ref-link-section-d211038851e5988\" rel=\"nofollow noopener\" target=\"_blank\">41<\/a>]. Similar findings were obtained on sheep and goats fed Atriplex [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 38\" title=\"Askar AR, Nassar MS, Badawy HS, Eid EY, Guada JA, Farid MF. Recovered energy and efficiency of digestion in sheep and goats fed Atriplex nummularia compared to alfalfa hay. Livest Sci. 2016;194:1\u20136. &#010;                  https:\/\/doi.org\/10.1016\/j.livsci.2016.10.009&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR38\" id=\"ref-link-section-d211038851e5994\" rel=\"nofollow noopener\" target=\"_blank\">38<\/a>, <a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 40\" title=\"Abdullah MA, Youssef IM, Eissa MA. Evaluation of Atriplex nummularia as a roughage source for growing lambs: effects on performance, rumen fermentation and some blood mineral concentrations. Int J Anim Sci Technol. 2019;2(4):55\u201361. &#010;                  https:\/\/doi.org\/10.11648\/j.ijast.20180204.13&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR40\" id=\"ref-link-section-d211038851e5997\" rel=\"nofollow noopener\" target=\"_blank\">40<\/a>]. Furthermore, higher tannins and phenols hinder the absorption of nutrients by animals [<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 42\" title=\"Zhu X, Dou X, Su T, Ye L, Zhang L, Liu H, et al. Microbiomic and metabolomic insights into the roles of hydrolysable versus condensed tannins on the growth performance, nutrient digestion, and rumen fermentation in Liaoning Cashmere goats. Microorganisms. 2025;13(4):933. &#010;                  https:\/\/doi.org\/10.3390\/microorganisms13040933&#010;                  &#010;                .\" href=\"http:\/\/bmcvetres.biomedcentral.com\/articles\/10.1186\/s12917-025-05109-9#ref-CR42\" id=\"ref-link-section-d211038851e6000\" rel=\"nofollow noopener\" target=\"_blank\">42<\/a>], which justifies the decline in the growth of Atriplex-fed groups, which have approximately similar rumen VFA to group HH fed Alfalfa hay.<\/p>\n","protected":false},"excerpt":{"rendered":"Understanding the interaction between the chemistry of forage plants, rumen microbiota, and fermentation, and performance in camel calves&hellip;\n","protected":false},"author":2,"featured_media":287123,"comment_status":"","ping_status":"","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[7],"tags":[165642,64,63,165640,14941,165641,208,165643,128,119092,9898,9864],"class_list":["post-287122","post","type-post","status-publish","format-standard","has-post-thumbnail","category-science","tag-atriplex","tag-au","tag-australia","tag-camels-calves","tag-fermentation","tag-forage-type","tag-growth","tag-rumen-microbiota","tag-science","tag-transgenics","tag-veterinary-medicine-veterinary-science","tag-zoology"],"_links":{"self":[{"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/posts\/287122","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/users\/2"}],"replies":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/comments?post=287122"}],"version-history":[{"count":0,"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/posts\/287122\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/media\/287123"}],"wp:attachment":[{"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/media?parent=287122"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/categories?post=287122"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/tags?post=287122"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}